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THE p-VERSION OF FINITE ELEMENT METHODS FOR STEADY VISCOELASTIC FLOWS BETWEEN ECCENTRIC ROTATING CYLINDERS 被引量:4

THE p VERSION OF FINITE ELEMENT METHODS FOR STEADY VISCOELASTIC FLOWS BETWEEN ECCENTRIC ROTATING CYLINDERS
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摘要 The steady state, two dimensional creeping flow of an upper convected Maxwell (UCM) fluid between two eccentric cylinders, with the inner one rotating,is computed by p version of EVSS/SUPG finite element method. The solutions converge as the polynomial order of the approximation increases. An upper Deborah number (De) limit attains 30 (p≤5). With De increasing, The boundary layers form and develop in the stress, which match closely with those predicted by asymptotic analysis. The results show that numerical oscillations is caused by the boundary layers of stress and can be reduced by increasing the polynomial order of the approximation. The steady state, two dimensional creeping flow of an upper convected Maxwell (UCM) fluid between two eccentric cylinders, with the inner one rotating,is computed by p version of EVSS/SUPG finite element method. The solutions converge as the polynomial order of the approximation increases. An upper Deborah number (De) limit attains 30 (p≤5). With De increasing, The boundary layers form and develop in the stress, which match closely with those predicted by asymptotic analysis. The results show that numerical oscillations is caused by the boundary layers of stress and can be reduced by increasing the polynomial order of the approximation.
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 1999年第3期19-26,共8页 水动力学研究与进展B辑(英文版)
关键词 STREAMLINE UPWIND Petrov GALERKIN (SUPG) formulation elastic viscous split stress (EVSS) method viscoelastic flows ECCENTRIC cylinders streamline upwind Petrov Galerkin (SUPG) formulation, elastic viscous split stress (EVSS) method, viscoelastic flows, eccentric cylinders
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